Department of Physics and Institute of Nanotechnology and Advanced Materials, Bar-Ilan University, Ramat-Gan 52900, Israel.
J Chem Phys. 2010 Jan 28;132(4):045101. doi: 10.1063/1.3298878.
While bending and twist can be treated as independent degrees of freedom for linear DNA molecules, the loop closure constraint introduces a coupling between these variables in circular DNA. We performed Monte Carlo simulations of wormlike rods with both bending and twist rigidity in order to study the coupling between the writhe and twist distributions for various DNA lengths. We find that for sufficiently short DNA, the writhe distribution differs from that of a model with bending energy only. We show that the factorization approximation introduced by previous researchers coincides, within numerical accuracy, with our simulation results, and conclude that the closure constraint is fully accounted for by the White-Fuller relation. Experimental tests of our results for short DNA plasmids are proposed.
虽然弯曲和扭曲可以被视为线性 DNA 分子的独立自由度,但环闭合约束在圆形 DNA 中引入了这些变量之间的耦合。我们对具有弯曲和扭曲刚度的线状棒进行了蒙特卡罗模拟,以研究各种 DNA 长度下扭结和扭曲分布之间的耦合。我们发现,对于足够短的 DNA,扭结分布与仅具有弯曲能的模型的扭结分布不同。我们表明,先前研究人员引入的因子分解近似在数值精度内与我们的模拟结果一致,并得出结论,闭合约束完全由 White-Fuller 关系来解释。我们提出了对短 DNA 质粒的实验测试来验证我们的结果。